首页> 外文期刊>Neurosurgery >Virtual reality in neurosurgical education: part-task ventriculostomy simulation with dynamic visual and haptic feedback.
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Virtual reality in neurosurgical education: part-task ventriculostomy simulation with dynamic visual and haptic feedback.

机译:神经外科教育中的虚拟现实:具有动态视觉和触觉反馈的部分任务心室造口术模拟。

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OBJECTIVE: Mastery of the neurosurgical skill set involves many hours of supervised intraoperative training. Convergence of political, economic, and social forces has limited neurosurgical resident operative exposure. There is need to develop realistic neurosurgical simulations that reproduce the operative experience, unrestricted by time and patient safety constraints. Computer-based, virtual reality platforms offer just such a possibility. The combination of virtual reality with dynamic, three-dimensional stereoscopic visualization, and haptic feedback technologies makes realistic procedural simulation possible. Most neurosurgical procedures can be conceptualized and segmented into critical task components, which can be simulated independently or in conjunction with other modules to recreate the experience of a complex neurosurgical procedure. METHODS: We use the ImmersiveTouch (ImmersiveTouch, Inc., Chicago, IL) virtual reality platform, developed at the University of Illinois at Chicago, to simulate the task of ventriculostomy catheter placement as a proof-of-concept. Computed tomographic data are used to create a virtual anatomic volume. RESULTS: Haptic feedback offers simulated resistance and relaxation with passage of a virtual three-dimensional ventriculostomy catheter through the brain parenchyma into the ventricle. A dynamic three-dimensional graphical interface renders changing visual perspective as the user's head moves. The simulation platform was found to have realistic visual, tactile, and handling characteristics, as assessed by neurosurgical faculty, residents, and medical students. CONCLUSION: We have developed a realistic, haptics-based virtual reality simulator for neurosurgical education. Our first module recreates a critical component of the ventriculostomy placement task. This approach to task simulation can be assembled in a modular manner to reproduce entire neurosurgical procedures.
机译:目的:掌握神经外科技能包括许多小时的有监督的术中训练。政治,经济和社会力量的融合限制了神经外科住院医师的手术暴露。需要开发现实的神经外科模拟来重现手术经验,不受时间和患者安全约束的限制。基于计算机的虚拟现实平台提供了这种可能性。虚拟现实与动态,三维立体可视化和触觉反馈技术的结合使现实的过程仿真成为可能。可以将大多数神经外科手术程序概念化并划分为关键任务组件,这些任务可以独立地模拟或与其他模块结合进行模拟,以重现复杂的神经外科手术程序的经验。方法:我们使用由伊利诺伊大学芝加哥分校开发的ImmersiveTouch(ImmersiveTouch,Inc.,Chicago,IL)虚拟现实平台来模拟脑室造口术导管置入的任务作为概念验证。计算机断层扫描数据用于创建虚拟解剖体。结果:通过虚拟三维脑室造口术导管穿过脑实质进入脑室,触觉反馈提供了模拟的抵抗和放松。动态的三维图形界面可随着用户头部的移动而改变视觉角度。经神经外科医师,住院医师和医学生评估,该仿真平台具有逼真的视觉,触觉和操控特性。结论:我们已经开发了一种基于触觉的,逼真的虚拟现实模拟器,用于神经外科教育。我们的第一个模块重新创建了心室造口术放置任务的关键组成部分。可以以模块化的方式组装这种用于任务模拟的方法,以重现整个神经外科手术过程。

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